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首页> 外文期刊>ACS Omega >Phosphorous-Doped Graphitic Material as a Solid Acid Catalyst for Microwave-Assisted Synthesis of β-Ketoenamines and Baeyer–Villiger Oxidation
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Phosphorous-Doped Graphitic Material as a Solid Acid Catalyst for Microwave-Assisted Synthesis of β-Ketoenamines and Baeyer–Villiger Oxidation

机译:磷掺杂的石墨材料作为微波辅助合成β-酮胺和Baeyer-Villiger氧化的固体酸催化剂

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摘要

Synthesis of phosphorous-doped graphitic materials (P-Gc) using phytic acid as a precursor was done in a microwave oven in a cost- and time-effective green way. The material was used as a solid acid catalyst for microwave (MW)-assisted synthesis of β-ketoenamines and Baeyer–Villiger (BV) oxidation. In the case of BV oxidation, hydrogen peroxide (H_(2)O_(2)) was used as a green oxidant. For β-ketoenamines, in most cases, 100% conversion with an ~95% yield was achieved in ethyl acetate medium. In solvent-free conditions, the yield of β-ketoenamines was ~75%. A kinetic study suggested that the resonance stabilization of the positive reaction center happens in the transition state for β-ketoenamine synthesis. In BV oxidation, cyclic ketones were converted to their corresponding cyclic esters in good to high yields (~80% yield) in a shorter reaction time (6–20 min). As per our knowledge, this is the first report of BV oxidation catalyzed by a heteroatom-doped graphitic material. For BV oxidation, the phosphoric acid functional groups present in P-Gc might increase the electrophilicity of the carbonyl group of the ketones to compensate for the weakness of H_(2)O_(2) as a nucleophile and a spiro-bisperoxide intermediate has been identified in high-resolution mass spectrometry.
机译:使用植酸作为前体的合成磷掺杂的石墨材料(P-GC)以一种成本和时间有效的绿色方式在微波炉中进行。该材料用作微波(MW)的固体酸催化剂,用于β-酮胺和Baeyer-Villiger(BV)氧化的合成。在BV氧化的情况下,使用过氧化氢(H_(2)O_(2))作为绿色氧化剂。对于β-酮胺,在大多数情况下,在乙酸乙酯培养基中实现了100%的产率〜95%的产率。在无溶剂条件下,β-酮胺的产率为约75%。动力学研究表明,正反应中心的共振稳定发生在β-酮胺合成的过渡状态下。在BV氧化中,在较短的反应时间(6-20分钟)中,将环酮转化为它们的相应环状酯,其高产率(〜80%)(6-20分钟)。根据我们的知识,这是杂原子掺杂的石墨材料催化的BV氧化的第一报告。对于BV氧化,P-GC中存在的磷酸官能团可能增加酮的羰基的亲电性来补偿H_(2)O_(2)作为亲核试剂的弱性,并且螺氧氧化物中间体在高分辨率质谱中识别。

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